GENOME-WIDE IDENTIFICATION OF RECOMBINATION RATES OF MALE VERSUS FEMALE GAMETES IN INTERSPECIFIC POPULATION OF COTTON
文献类型: 外文期刊
作者: Yu, Yu 1 ; Lin, Zhongxu 1 ; Zhang, Xianlong 1 ;
作者机构: 1.Huazhong Agr Univ, Natl Key Lab Crop Genet Improvement, Wuhan 430070, Hubei, Peoples R China
2.Huazhong Agr Univ, Natl Ctr Plant Gene Res Wuhan, Wuhan 430070, Hubei, Peoples R China
3.Xinjiang Acad Agr & Reclamat Sci, Cotton Inst, Shihezi 832000, Xinjiang, Peoples R China
期刊名称:PAKISTAN JOURNAL OF BOTANY ( 影响因子:0.972; 五年影响因子:0.988 )
ISSN: 0556-3321
年卷期: 2012 年 44 卷 2 期
页码:
收录情况: SCI
摘要: Based on the established SSR-based BC1 genetic linkage map, 2 genetic maps covered with 313 markers have been developed for 2 more backcross populations which was aimed to study the difference of recombination rates between male and female gametes. The total lengths of genetic maps for male and female were 4532.9cM and 4464.4cM respectively, and the average marker distances were 14.48cM and 14.26cM respectively. The results showed that there was no difference for the recombination rates between male and female gametes on the total map length and the average marker interval. There were 6 linkage groups showing significant differences between the 2 populations, which indicated that the gamete recombinant rates can only influence some chromosomes in cotton. Although a lot of marker intervals showed difference between maps, only 17 marker intervals were caused by the male and female gametes recombination rates. Further investigation showed that the male gamete mainly resulted in a longer genetic distance between markers, and increased the recombination rates; while the female gamete usually resulted in a shorter genetic distance of marker interval, and decreased the recombination rates. The present results will give us some useful instructions in cotton genetics and breeding.
- 相关文献
作者其他论文 更多>>
-
InDel variations and gene expression analysis related to Fusarium wilt resistance in Gossypium barbadense
作者:Liu, Baojun;Qu, Yanying;Gu, Aixing;Han, Wanli;Yu, Yu;Wang, Xuwen;Bai, Jianyu
关键词:
-
Genome-Wide and Expression Pattern Analysis of the DVL Gene Family Reveals GhM_A05G1032 Is Involved in Fuzz Development in G. hirsutum
作者:Jiao, Yang;Zhao, Fuxiang;Yu, Yu;Jiao, Yang;Geng, Shiwei;Li, Shengmei;Su, Zhanlian;Chen, Quanjia;Qu, Yanying
关键词:cotton; DVL; expression pattern; fuzz; WGCNA; VIGS
-
Genome-wide association screening and verification of potential genes associated with defoliation rate induced by defoliant in upland cotton
作者:Pan, Zhenyuan;Zhou, Xiaofeng;Li, Juan;Wang, Xuwen;Yu, Yu;Pan, Zhenyuan;Wang, Runze;Ding, Shugen;Han, Peng;Wu, Yuanlong;Nie, Xinhui;Zhao, Zhansheng
关键词:Machine-harvested cotton; Defoliation rate; Genome-wide association study; Favorable allele
-
Expression profile analysis of cotton fiber secondary cell wall thickening stage
作者:Liu, Li;Kong, Xianhui;Wang, Xuwen;Si, Aijun;Wang, Juan;Yu, Yu;Grover, Corrinne E.;Jareczek, Josef;Chen, Zhiwen
关键词:Upland cotton; Sea island cotton; Fiber quality; Gene expression patterns; Secondary cell wall thickening
-
Dissecting the Superior Drivers for the Simultaneous Improvement of Fiber Quality and Yield Under Drought Stress Via Genome-Wide Artificial Introgressions of Gossypium barbadense into Gossypium hirsutum
作者:Han, Bei;Zhang, Wenhao;Wang, Fengjiao;Yue, Pengkai;Liu, Zhilin;Yue, Dandan;Zhang, Bing;Ma, Yizan;Lin, Zhongxu;Zhang, Xianlong;Yang, Xiyan;Lin, Zhongxu;Zhang, Xianlong;Yang, Xiyan;Yu, Yu;Wang, Yanqin
关键词:cotton; drought stress; DRR1; DRT1; QTL
-
Different responses of the rhizosphere microbiome to Verticillium dahliae infection in two cotton cultivars
作者:Tie, Zhanjiang;Chen, Weijian;Liu, Zheng;Zhao, Sifeng;Khan, Faisal Hayat;Zhang, Xuekun;Xi, Hui;Wang, Peng;Yu, Yu;Tang, Binghui
关键词:cotton; Verticillium dahliae; rhizosphere microbiome; 16S rRNA; ITS
-
Genetic and Morpho-Physiological Differences among Transgenic and No-Transgenic Cotton Cultivars
作者:Liu, Li;Kong, Xianhui;Wang, Xuwen;Wang, Juan;Si, Aijun;Zhao, Fuxiang;Liu, Wenhao;Yu, Yu;Wang, Dan;Hua, Jinping;Chen, Zhiwen
关键词:fatty acids; fiber development; gene expression; seed oil content; upland cotton (Gossypium hirsutum)



